Winter Tamara, Boehm Anna, Presser Volker, Gallei Markus
Ernst-Berl-Institute of Chemical Engineering and Macromolecular Chemistry, Technische Universität Darmstadt, Alarich-Weiss-Straße 4, Darmstadt, 64287, Germany.
Department of Materials Science and Engineering, Saarland University, Campus D2 2, Saarbrücken, 66123, Germany.
Macromol Rapid Commun. 2021 Jan;42(1):e2000557. doi: 10.1002/marc.202000557. Epub 2020 Nov 30.
In this work, the preparation and fabrication of elastomeric opal films revealing reversible mechanochromic and pH-responsive features are reported. The core-interlayer-shell (CIS) particles are synthesized via stepwise emulsion polymerization leading to hard core (polystyrene), crosslinked interlayer (poly(methyl methacrylate-co-allyl methacrylate), and soft poly(ethyl acrylate-co-butyl acrylate-co-(2-hydroxyethyl) methacrylate) shell particles featuring a size of 294.9 ± 14.8 nm. This particle architecture enables the application of the melt-shear organization technique leading to elastomeric opal films with orange, respectively, green brilliant reflection colors dependent on the angle of view. Moreover, the hydroxyl moieties as part of the particle shell are advantageously used for subsequent thermally induced crosslinking reactions enabling the preparation of reversibly tunable mechanochromic structural colors based on Bragg's law of diffraction. Additionally, the CIS particles can be loaded upon extrusion or chemically by a postfunctionalization strategy with organic dyes implying pH-responsive features. This convenient protocol for preparing multi-responsive, reversibly stretch-tunable opal films is expected to enable a new material family for anti-counterfeiting applications based on external triggers.
在这项工作中,报道了具有可逆机械变色和pH响应特性的弹性蛋白石薄膜的制备与制造。通过逐步乳液聚合合成核-中间层-壳(CIS)颗粒,得到硬核(聚苯乙烯)、交联中间层(聚(甲基丙烯酸甲酯-共-烯丙基甲基丙烯酸甲酯))以及尺寸为294.9±14.8 nm的软质聚(丙烯酸乙酯-共-丙烯酸丁酯-共-(甲基丙烯酸2-羟乙酯))壳颗粒。这种颗粒结构使得熔体剪切组织技术得以应用,从而得到分别具有橙色和绿色鲜艳反射颜色且取决于视角的弹性蛋白石薄膜。此外,作为颗粒壳一部分的羟基部分被有利地用于随后的热诱导交联反应,从而能够基于布拉格衍射定律制备可逆可调的机械变色结构颜色。另外,CIS颗粒可以在挤出时加载,或者通过有机染料的后功能化策略进行化学加载,这意味着具有pH响应特性。这种制备多响应、可逆拉伸可调蛋白石薄膜的简便方法有望为基于外部触发的防伪应用带来一种新型材料系列。